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关于特定配体氮杂青霉素与两种细胞色素P450 3A亚型(3A4和3A5)之间动态相互作用差异的分子动力学研究。

MD investigation on the differences in the dynamic interactions between the specific ligand azamulin and two CYP3A isoforms, 3A4 and 3A5.

作者信息

Liu Shuhui, Jing Tao, Jia Ran, Zhang Ji-Long, Bai Fu-Quan

机构信息

Institute of Theoretical Chemistry, College of Chemistry, Jilin University, Changchun, People's Republic of China.

School and Hospital of Stomatology, Jilin University, Changchun, People's Republic of China.

出版信息

J Biomol Struct Dyn. 2024 Mar 27:1-10. doi: 10.1080/07391102.2024.2331100.

Abstract

The unmarked potential drug molecule azamulin has been found to be a specific inhibitor of CYP3A4 and CYP3A5 in recent years, but this molecule also shows different binding ability and affinity to the two CYP3A isoforms. In order to explore the microscopic mechanism, conventional molecular dynamics (MD) simulation methods were performed to study the dynamic interactions between two isoforms and azamulin. The simulation results show that the binding of the ligand leads to different structural properties of two CYP3A proteins. First of all, compared with -CYP3A4, the binding of the ligand azamulin can lead to changes in the structural flexibility of CYP3A4, i.e., -CYP3A4 is more flexible than -CYP3A4. The structural changes of CYP3A5 are just the opposite. The ligand binding increases the rigidity of CYP3A5. Furthermore, the representative structures of the production phase in the MD simulation were in details analyzed to obtain the microscopic interactions between the ligand azamulin and two CYP3A isoforms at the atomic level. It is speculated that the difference of composition and interaction of the active sites is the fundamental cause of the change of structural properties of the two proteins.

摘要

近年来,未标记的潜在药物分子阿扎木林已被发现是CYP3A4和CYP3A5的特异性抑制剂,但该分子对两种CYP3A亚型也表现出不同的结合能力和亲和力。为了探究微观机制,采用传统分子动力学(MD)模拟方法研究了两种亚型与阿扎木林之间的动态相互作用。模拟结果表明,配体的结合导致两种CYP3A蛋白具有不同的结构特性。首先,与-CYP3A4相比,配体阿扎木林的结合可导致CYP3A4结构灵活性的变化,即-CYP3A4比-CYP3A4更灵活。CYP3A5的结构变化则相反。配体结合增加了CYP3A5的刚性。此外,对MD模拟中生产阶段的代表性结构进行了详细分析,以获得配体阿扎木林与两种CYP3A亚型在原子水平上的微观相互作用。推测活性位点组成和相互作用的差异是两种蛋白质结构特性变化的根本原因。

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